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Collaborative Null-Steering Beamforming for Uniformly Distributed Wireless Sensor Networks

机译:均匀分布的无线传感器网络的协作空导波束成形

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Null-steering transmit beamformers aim to maximize the received signal power in the direction of the intended receiver while substantially reducing the power impinging on the unintended receivers located in other directions. The existing null-steering beamformers may not be directly applied in wireless sensor networks (WSNs) as they do not conform with the decentralized nature of WSNs and require every node to be aware of the locations of all other nodes in the network. This manuscript presents a novel collaborative null-steering beamformer that can be implemented in uniformly distributed WSNs in which each node is oblivious of other nodes' locations. The average beampattern expression of the proposed beamformer is derived and it is shown that the beampattern associated with any arbitrary realization of the nodes' locations converges with probability one to the so-obtained average beampattern as the number of collaborating nodes grows large. Properties of the average beampattern are analytically studied. In particular, it is proven that the average gain of the proposed beamformer is inversely proportional to the number of collaborating nodes in the directions of unintended receivers and further, if a mild condition is satisfied, it is approximately equal to that of the collaborative conventional beamformer in the directions with far angular distance from any unintended receiver. It is argued that if virtual unintended receivers are assumed at proper directions, then the proposed collaborative null-steering beamformer can form an average beampattern with sidelobe peaks substantially smaller than those of the average beampattern of the collaborative conventional beamformer. To substantiate this argument, the optimal direction of a virtual unintended receiver is obtained such that its associated collaborative null-steering beamformer forms an average beam-pattern with minimal largest side-lobe peak. Depending on the number of collaborating nodes, it is further shown -nthat the largest average sidelobe peak of the latter beamformer is up to 6.6 (dB) less than that of the collaborative conventional beamformer.
机译:空转向发射波束成形器旨在使预期接收器方向上的接收信号功率最大化,同时大幅降低撞击在其他方向上的非预期接收器上的功率。现有的空导向波束形成器可能不直接应用于无线传感器网络(WSN),因为它们不符合WSN的分散性,并且要求每个节点都知道网络中所有其他节点的位置。该手稿提出了一种新颖的协作式零方向波束成形器,可以在均匀分布的WSN中实现,其中每个节点都可以忽略其他节点的位置。推导了所提出的波束形成器的平均波束图表达式,结果表明,随着协作节点数量的增加,与节点位置的任意实现相关的波束图以概率1收敛到所获得的平均波束图。对平均光束图案的特性进行了分析研究。特别是,已经证明,所提出的波束形成器的平均增益与意外接收器方向上的协作节点的数量成反比,并且,如果满足温和条件,则其大约等于协作传统波束形成器的平均增益。在与任何意外接收器相距较远的角度的方向上。有人认为,如果在正确的方向上假设虚拟非预期接收器,则所提出的协作式零转向波束形成器可以形成平均旁瓣峰值明显小于协作传统波束形成器的平均波束图案的平均旁瓣峰值的波束图案。为了证实该观点,获得虚拟无意接收器的最佳方向,以使其相关联的协同零转向波束形成器形成具有最小最大旁瓣峰的平均波束图。根据协作节点的数量,进一步显示-n后者波束形成器的最大平均旁瓣峰值比协作传统波束形成器的最大平均旁瓣峰值小6.6(dB)。

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